Yu Weiying, McDonnell Kristen, Taketo Makoto M, Bai C Brian
Department of Genetics, Case Western Reserve University School of Medicine, Cleveland, OH 44106, USA.
Development. 2008 Nov;135(22):3687-96. doi: 10.1242/dev.021899. Epub 2008 Oct 16.
The identity of distinct cell types in the ventral neural tube is generally believed to be specified by sonic hedgehog (Shh) in a concentration-dependent manner. However, recent studies have questioned whether Shh is the sole signaling molecule determining ventral neuronal cell fates. Here we provide evidence that canonical Wnt signaling is involved in the generation of different cell types in the ventral spinal cord. We show that Wnt signaling is active in the mouse ventral spinal cord at the time when ventral cell types are specified. Furthermore, using an approach that stabilizes beta-catenin protein in small patches of ventral spinal cord cells at different stages, we show that Wnt signaling activates different subsets of target genes depending on the time when Wnt signaling is amplified. Moreover, disruption of Wnt signaling results in the expansion of ventrally located progenitors. Finally, we show genetically that Wnt signaling interacts with Hh signaling at least in part through regulating the transcription of Gli3. Our results reveal a novel mechanism by which ventral patterning is achieved through a coordination of Wnt and Shh signaling.
人们普遍认为,腹侧神经管中不同细胞类型的身份是由音猬因子(Shh)以浓度依赖的方式确定的。然而,最近的研究对Shh是否是决定腹侧神经元细胞命运的唯一信号分子提出了质疑。在这里,我们提供证据表明,经典Wnt信号通路参与了腹侧脊髓中不同细胞类型的生成。我们发现,在腹侧细胞类型被确定时,Wnt信号通路在小鼠腹侧脊髓中是活跃的。此外,通过一种在不同阶段稳定腹侧脊髓细胞小区域中β-连环蛋白的方法,我们发现Wnt信号通路根据其被放大的时间激活不同的靶基因子集。此外,Wnt信号通路的破坏导致腹侧祖细胞的扩张。最后,我们通过遗传学方法表明,Wnt信号通路至少部分地通过调节Gli3的转录与Hh信号通路相互作用。我们的结果揭示了一种新机制,通过该机制腹侧模式形成是通过Wnt和Shh信号通路的协调实现的。